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新型多维液相色谱工作流程,采用多段心切割的环内酶解,快速灵活地鉴定生物治疗性蛋白变体。

Novel Multidimensional Liquid Chromatography Workflow with In-Loop Enzymatic Digests of Multiple Heart-Cuts for Fast and Flexible Characterization of Biotherapeutic Protein Variants.

机构信息

Large Molecule Research, Roche Innovation Center Munich, Roche Pharma Research and Early Development, Roche Diagnostics GmbH, 82377 Penzberg, Germany.

Cell Therapy Engineering and Development, Genentech, 1 DNA Way, South San Francisco, California, 94080, United States.

出版信息

Anal Chem. 2023 Feb 21;95(7):3629-3637. doi: 10.1021/acs.analchem.2c04467. Epub 2023 Feb 6.

Abstract

Multidimensional liquid chromatography (mD-LC) is becoming a powerful tool for complete characterization of individual peaks and protein variants through separation methods such as nondenaturing ion exchange (IEC) or size-exclusion chromatography coupled to reversed-phase (RP) chromatography. The flexibility of commercially available and customized mD-LC systems is still limited in terms of enzymatic peak processing between chromatographic dimensions. In this regard, only a few column-immobilized proteases are available for detailed peak characterization by mD-LC coupled to mass spectrometry (mD-LC-MS). Here, we present a purpose-built and automated multiple heart-cutting mD-LC design with a novel analytical workflow involving in-loop enzymatic heart-cut digestion between the first-dimensional column and transfer to the second dimension before MS or MS/MS analyses. The setup facilitates the spike-in of any enzyme to multiple heart-cuts for multilevel analysis, for example, for peptide mapping, fragment generation, or deglycosylation, to reduce heterogeneity and provide maximum flexibility in terms of incubation time for optimal peak characterization. We demonstrate the application of IEC coupled to RP-LC-MS and automated in-loop deglycosylation and on-column reduction of an IgG antibody combined with upper hinge region cleavage for Fab generation. We further employ mD-LC-MS and mD-LC-MS/MS to assess post-translational modifications of a bispecific antibody and to support molecule selection by evaluating the best downstream purification strategy. The novel design and automated workflow of the mD-LC system described here offers enhanced flexibility for in-solution processing and real-time monitoring of multiple heart-cuts enabling streamlined characterization of unknown biotherapeutic charge and size variants.

摘要

多维液相色谱 (mD-LC) 通过非变性离子交换 (IEC) 或尺寸排阻色谱与反相 (RP) 色谱等分离方法,正在成为全面表征单个峰和蛋白质变体的强大工具。商业上可用的和定制的 mD-LC 系统在色谱维度之间的酶峰处理方面的灵活性仍然有限。在这方面,只有少数固定化蛋白酶可用于通过与质谱 (mD-LC-MS) 联用的 mD-LC 进行详细的峰特征分析。在这里,我们提出了一种定制的自动化多维多次切割 mD-LC 设计,具有新颖的分析工作流程,涉及在第一维柱之间进行环内酶切,并在 MS 或 MS/MS 分析之前转移到第二维。该设置便于将任何酶引入多个心切,进行多层次分析,例如肽图、片段生成或脱糖基化,以减少异质性并提供最佳的孵育时间以实现最佳峰特征分析的最大灵活性。我们展示了 IEC 与 RP-LC-MS 联用以及自动化环内脱糖基化和柱上还原的应用,将 IgG 抗体与上铰链区域切割相结合以生成 Fab。我们还进一步采用 mD-LC-MS 和 mD-LC-MS/MS 来评估双特异性抗体的翻译后修饰,并通过评估最佳的下游纯化策略来支持分子选择。这里描述的 mD-LC 系统的新型设计和自动化工作流程提供了增强的灵活性,用于溶液中的处理和实时监测多个心切,从而实现对未知生物治疗电荷和大小变体的简化特征分析。

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